Related Experiment Video
Updated: Aug 21, 2026

Use of Viral Entry Assays and Molecular Docking Analysis for the Identification of Antiviral Candidates against Coxsackievirus A16
Published on: July 15, 2019
Novel role for decay-accelerating factor in coxsackievirus A21-mediated cell infectivity
Nicole G Newcombe1, Leone G Beagley, Dale Christiansen
1The Picornaviral Research Unit, Discipline of Immunology and Microbiology, Faculty of Health, The University of Newcastle, Level 3, David Maddison Clinical Sciences Building, Royal Newcastle Hospital, Newcastle, New South Wales 2300, Australia.
Abstract:
Decay-accelerating factor (DAF) is involved in the cell membrane attachment of many human enteroviruses. Presently, further specific active roles of DAF in mediating productive cell infection and in the pathogenesis of natural enterovirus infection are poorly understood. In an attempt to more fully understand the role of DAF in lytic cell infection we examined the specific interactions of the prototype strain of coxsackievirus A21 (CVA21) with surface-expressed DAF. Investigations into discrete DAF-CVA21 interactions focused on viral binding; viral particle elution with respect to the parameters of time, temperature, and pH; and subsequent cell infection. Radiolabeled-virus binding assays revealed that peak elution of CVA21 from DAF occurred within 15 min of initial attachment and that the DAF-eluted virus increased in a linear fashion with respect to temperature and pH. CVA21 eluted from endogenous surface-expressed DAF was highly infectious, in contrast to CVA21 eluted from intercellular adhesion molecule 1 (ICAM-1), which retained little to no infectivity. Using an adenovirus transduction system, we demonstrate that CVA21 can remain infectious for up to 24 h after DAF binding and is capable of initiating a multicycle lytic infection upon delayed ICAM-1 surface expression. Taken together, the data suggest that a major role of DAF in cell infection by the prototype strain of CVA21 is to provide membrane concentration of infectious virions, effectively increasing viral interactions with endogenous or induced ICAM-1.
Insights
Decay-accelerating factor (DAF) concentrates infectious coxsackievirus A21 (CVA21) on cell membranes. This DAF-mediated concentration enhances viral infectivity and facilitates subsequent cell infection via ICAM-1.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Decay-accelerating factor (DAF) mediates cell membrane attachment for many human enteroviruses.
- The precise roles of DAF in productive enterovirus infection and pathogenesis remain unclear.
Purpose of the Study:
- To elucidate the specific functions of DAF in coxsackievirus A21 (CVA21) lytic cell infection.
- To investigate the interactions between CVA21 and surface-expressed DAF, focusing on viral binding, elution, and infectivity.
Main Methods:
- Radiolabeled-virus binding assays to study CVA21 attachment and elution from DAF.
- Analysis of CVA21 elution parameters including time, temperature, and pH.
- Assessment of viral infectivity after elution from DAF and ICAM-1.
- Adenovirus transduction system to evaluate delayed infection initiation.
Main Results:
- Peak CVA21 elution from DAF occurred within 15 minutes of attachment.
- DAF-eluted CVA21 demonstrated high infectivity, unlike CVA21 eluted from ICAM-1.
- CVA21 remained infectious for up to 24 hours after DAF binding.
- Infectious CVA21 initiated multicycle lytic infection upon delayed ICAM-1 expression.
Conclusions:
- DAF acts as a crucial platform for concentrating infectious CVA21 virions on cell membranes.
- This concentration mechanism enhances viral interactions with ICAM-1, promoting productive cell infection.
- DAF plays a significant role in the pathogenesis of CVA21 infections by facilitating efficient viral entry.
Related Concept Videos
Inhibitors Of Virion Release
Inhibitors of Virion Maturation and Assembly
Nonsense-mediated mRNA Decay
Usually, Upf3 binds to an Exon Junction Complex (EJC) at mRNA splice sites. If a ribosome fully translates the mRNA,...
Nonsense-mediated mRNA Decay
Usually, Upf3 binds to an Exon Junction Complex (EJC) at mRNA splice sites. If a ribosome fully translates the mRNA,...
Cytomegalovirus Disease
Retrovirus Life Cycles

